Skip to main content

TFEB drives PGC-1α expression in adipocytes to protect against diet-induced metabolic dysfunction.

Citation
Evans, T. D., et al. “Tfeb Drives Pgc-1Α Expression In Adipocytes To Protect Against Diet-Induced Metabolic Dysfunction.”. Science Signaling.
Center Washington University in St Louis
Author Trent D Evans, Xiangyu Zhang, Se-Jin Jeong, Anyuan He, Eric Song, Somashubhra Bhattacharya, Karyn B Holloway, Irfan J Lodhi, Babak Razani
Abstract

TFEB is a basic helix-loop-helix transcription factor that confers protection against metabolic diseases such as atherosclerosis by targeting a network of genes involved in autophagy-lysosomal biogenesis and lipid catabolism. In this study, we sought to characterize the role of TFEB in adipocyte and adipose tissue physiology and evaluate the therapeutic potential of adipocyte-specific TFEB overexpression in obesity. We demonstrated that mice with adipocyte-specific TFEB overexpression (Adipo-TFEB) were protected from diet-induced obesity, insulin resistance, and metabolic sequelae. Adipo-TFEB mice were lean primarily through increased metabolic rate, suggesting a role for adipose tissue browning and enhanced nonshivering thermogenesis in fat. Transcriptional characterization revealed that TFEB targeted genes involved in adipose tissue browning rather than those involved in autophagy. One such gene encoded PGC-1α, an established target of TFEB that promotes adipocyte browning. To dissect the role of PGC-1α in mediating the downstream effects of TFEB overexpression, we generated mice with adipocyte-specific PGC-1α deficiency and TFEB overexpression. Without PGC-1α, the ability of TFEB overexpression to brown adipose tissue and to elicit beneficial metabolic effects was blunted. Overall, these data implicate TFEB as a PGC-1α-dependent regulator of adipocyte browning and suggest its therapeutic potential in treating metabolic disease.

Year of Publication
2019
Journal
Science signaling
Volume
12
Issue
606
Date Published
12/2019
ISSN Number
1937-9145
DOI
10.1126/scisignal.aau2281
Alternate Journal
Sci Signal
PMID
31690633
PMCID
PMC6882500
Download citation